C. J. STURGEON, M G RASUL
The study investigates the technologies that have the potential to provide feasible reduction of carbon dioxide (CO2) from a reference power plant. Particular focus has been given to mineral carbonation (at 1 bar) in which magnesium (Mg) and/or calcium (Ca) bearing materials fixate themselves to CO2 molecules to produce Mg and/or Ca carbonates in a solid stable form. The study also involved energy and mass balances of various mineral carbonation systems for simulation in Simulink. Furthermore, the various carbonation systems were incorporated into a model of a reference plant’s operating efficiency. This allowed for analysis of the impact that the carbonation systems would have on the existing plant’s performance.
@article{21eb8dea-99c4-469f-a433-343623f0954b,
title={Reduction of Carbon Dioxide Emissions by},
author={C. J. STURGEON and M G RASUL},
year={2026},
language={en}
}TY - JOUR TI - Reduction of Carbon Dioxide Emissions by AU - C. J. STURGEON AU - M G RASUL PY - 2026 LA - en ER -
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